4.6 Article

Influence of Chemistry on Wetting Dynamics of Nanotextured Hydrophobic Surfaces

Journal

LANGMUIR
Volume 26, Issue 7, Pages 5196-5201

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/la903654n

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Funding

  1. Napolyde project-sixth framework programme [NMPCT-2005-515846]

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In this work, the role of a chemical parameter, such as the degree of fluorination, on the wetting behavior of nanotextured hydrophobic surfaces is investigated. Texture and chemistry tuning of the surfaces has been accomplished with single batch radiofrequency low-pressure plasma processes. Polystyrene substrates have been textured by CF(4) plasma etching and subsequently covered by thin films with a tunable F-to-C ratio, obtained in discharges fed with C(4)F(8)-C(2)H(4). Measurements of wetting dynamics reveal a regime transition from adhesive-hydrophobic to slippery-superhydrophobic, i.e., from wet to non wet stales, as the F-to-C rises at constant topography. Such achievements are strengthened by calculation of the solid fraction of surface water contact area applying Cassie-Baxter advancing and receding equations to water contact angle data of textured and flat reference surfaces.

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